DocumentCode :
3327625
Title :
DNA damage in mammalian cells by non-thermal atmospheric pressure microsecond pulsed dielectric barrier discharge plasma is not mediated by ozone
Author :
Kalghatgi, Sameer ; Fridman, Alexander ; Friedman, Gary ; Kelly, Crystal ; Cerchar, Ekaterina ; Azizkhan-Clifford, Jane
Author_Institution :
Drexel Univ., Philadelphia, PA, USA
fYear :
2010
fDate :
20-24 June 2010
Firstpage :
1
Lastpage :
1
Abstract :
Summary form only given. Non-thermal dielectric barrier discharge (DBD) plasma is now being widely developed for various medical applications ranging from wound healing to cancer therapy but the physical and biological mechanisms of interaction of such plasmas with mammalian cells are still not well understood. Non-thermal DBD plasma is known to generate significant amounts of ozone and it is possible that ozone may have a major role to play in mediating the interactions of non-thermal plasma with mammalian cells. Although typically requiring much higher treatment time than the typical times reported here, ozonation is, in fact, widely employed to kill micro-organisms in water. Ozone therapy is also being studied and developed for wound healing, healing of diabetic ulcers and is known to have various medical and physiological effects in mammalian tissue.We have shown earlier that plasma treatment of mammalian cells submerged in a shallow layer of culture medium can result in dose dependent DNA damage. We specifically examined the induction of DNA damage by DBD plasma and showed that DNA damage is induced primarily by neutral active species. We wanted to understand the role of ozone in mediating the interaction of non-thermal plasma dielectric barrier discharge plasma with mammalian cells. The goal of this paper was to test the hypothesis that ozone mediates the interaction of non-thermal atmospheric pressure dielectric barrier discharge plasma with mammalian cells. We show that ozone treatment is qualitatively different from non-thermal atmospheric pressure DBD plasma treatment and does not play a major role in mediating the interaction of non-thermal DBD plasma with mammalian cells.
Keywords :
DNA; biological tissues; cancer; cellular biophysics; discharges (electric); microorganisms; molecular biophysics; ozone; patient treatment; plasma applications; wounds; DNA damage; O3; biological mechanism; cancer therapy; diabetic ulcers; high treatment time; mammalian cells; mammalian tissue; microorganism; microsecond pulsed dielectric barrier discharge plasma; neutral active species; nonthermal atmospheric pressure; nonthermal plasma interaction; ozone therapy; physical mechanism; physiological effect; plasma treatment; shallow layer; water; wound healing; Atmospheric-pressure plasmas; Biomedical equipment; Cancer; Cells (biology); DNA; Dielectrics; Medical services; Medical treatment; Plasma applications; Wounds;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Plasma Science, 2010 Abstracts IEEE International Conference on
Conference_Location :
Norfolk, VA
ISSN :
0730-9244
Print_ISBN :
978-1-4244-5474-7
Electronic_ISBN :
0730-9244
Type :
conf
DOI :
10.1109/PLASMA.2010.5533915
Filename :
5533915
Link To Document :
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